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数字分析方法第一部分:分区统计和数字 PCR。

Digital Assays Part I: Partitioning Statistics and Digital PCR.

机构信息

1 Department of Electrical and Computer Engineering, and Department of Biomedical Engineering, Wayne State University, Detroit, MI, USA.

出版信息

SLAS Technol. 2017 Aug;22(4):369-386. doi: 10.1177/2472630317705680. Epub 2017 Apr 27.

DOI:10.1177/2472630317705680
PMID:28448765
Abstract

A digital assay is one in which the sample is partitioned into many small containers such that each partition contains a discrete number of biological entities (0, 1, 2, 3, …). A powerful technique in the biologist's toolkit, digital assays bring a new level of precision in quantifying nucleic acids, measuring proteins and their enzymatic activity, and probing single-cell genotypes and phenotypes. Part I of this review begins with the benefits and Poisson statistics of partitioning, including sources of error. The remainder focuses on digital PCR (dPCR) for quantification of nucleic acids. We discuss five commercial instruments that partition samples into physically isolated chambers (cdPCR) or droplet emulsions (ddPCR). We compare the strengths of dPCR (absolute quantitation, precision, and ability to detect rare or mutant targets) with those of its predecessor, quantitative real-time PCR (dynamic range, larger sample volumes, and throughput). Lastly, we describe several promising applications of dPCR, including copy number variation, quantitation of circulating tumor DNA and viral load, RNA/miRNA quantitation with reverse transcription dPCR, and library preparation for next-generation sequencing. This review is intended to give a broad perspective to scientists interested in adopting digital assays into their workflows. Part II focuses on digital protein and cell assays.

摘要

数字分析是一种将样本分割成许多小容器的方法,使得每个容器中包含离散数量的生物实体(0、1、2、3、...)。作为生物学家工具包中的一项强大技术,数字分析在定量核酸、测量蛋白质及其酶活性以及探测单细胞基因型和表型方面带来了新的精度水平。这篇综述的第一部分首先介绍了分区的好处和泊松统计,包括误差源。其余部分主要集中在用于定量核酸的数字 PCR(dPCR)。我们讨论了五种将样本分区到物理上隔离的腔室(cdPCR)或液滴乳液(ddPCR)的商业仪器。我们比较了 dPCR(绝对定量、精度和检测稀有或突变靶标的能力)与前代定量实时 PCR(动态范围、更大的样本体积和通量)的优势。最后,我们描述了 dPCR 的几个有前途的应用,包括拷贝数变异、循环肿瘤 DNA 和病毒载量的定量、逆转录 dPCR 对 RNA/miRNA 的定量以及下一代测序的文库制备。这篇综述旨在为有兴趣将数字分析应用于其工作流程的科学家提供广泛的视角。第二部分重点介绍数字蛋白质和细胞分析。

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